Reshaping nanobodies for affinity purification on protein a

被引:6
|
作者
Crauwels, Maxine [1 ,2 ]
Van Vaerenbergh, Nele [1 ]
Kulaya, Neeme Benedict [1 ]
Vincke, Cecile [1 ]
D'Huyvetter, Matthias [2 ]
Devoogdt, Nick [2 ]
Muyldermans, Serge [1 ]
Xavier, Catarina [2 ]
机构
[1] Vrije Univ Brussel, Lab Cellular & Mol Immunol, B-1050 Brussels, Belgium
[2] Vrije Univ Brussel, In Vivo Cellular & Mol Imaging Lab ICMI, B-1090 Brussels, Belgium
关键词
Nanobody; Protein A; Affinity chromatography; DOMAIN ANTIBODIES; STAPHYLOCOCCUS-AUREUS; PHASE-I; THERAPY; FRAGMENTS; BINDING; EXPRESSION; GENERATION; RECEPTORS; SEQUENCES;
D O I
10.1016/j.nbt.2020.01.005
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Nanobodies (Nbs) are 15 kDa recombinant, single-domain, antigen-specific fragments derived from heavy-chain only antibodies (HCAbs) occurring naturally in species of Camelidae. The beneficial properties of Nbs make them suitable tracers for diagnostic and therapeutic purposes. Whereas Nbs with a terminal hexa-histidine tag (His-tag) are easily purified via immobilized metal affinity chromatography, previous studies revealed a negative impact of the His-tag on the biodistribution of Nb-based tracers. Thus, it is important to develop alternative purification methods for Nbs without a His-tag. Protein A (SpA), a surface protein of Staphylococcus aureus, binds the Fc-region of IgG molecules and also to a lesser extent human heavy chain family-3 variable (VH) regions. Nbs also belong to this VH family, although many fail to be recognized by SpA. Here it is demonstrated that non-SpA binding Nbs can be mutagenized for purification by SpA affinity chromatography and that these Nb variants retain their thermostability and antigen affinity, while biodistribution remains unaffected.
引用
收藏
页码:20 / 28
页数:9
相关论文
共 50 条
  • [41] Antibody Fragments and Their Purification by Protein L Affinity Chromatography
    Rodrigo, Gustav
    Gruvegard, Mats
    Van Alstine, James M.
    ANTIBODIES, 2015, 4 (03): : 259 - 277
  • [42] A heme fusion tag for protein affinity purification and quantification
    Asher, Wesley B.
    Bren, Kara L.
    PROTEIN SCIENCE, 2010, 19 (10) : 1830 - 1839
  • [43] AFFINITY MEMBRANE-MEDIATED PROTEIN-PURIFICATION
    ZALE, SE
    HOLTON, OD
    GARG, VK
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1990, 199 : 122 - IAEC
  • [44] Affinity purification and recycling of protein folding aids.
    Walsh, MK
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1998, 216 : U273 - U273
  • [45] Tandem affinity purification and identification of protein complex components
    Gould, KL
    Ren, LP
    Feoktistova, AS
    Jennings, JL
    Link, AJ
    METHODS, 2004, 33 (03) : 239 - 244
  • [46] EFFECT OF MATRICES ON AFFINITY PURIFICATION OF PROTEIN-C
    KANG, K
    RYU, D
    DROHAN, WN
    ORTHNER, CL
    BIOTECHNOLOGY AND BIOENGINEERING, 1992, 39 (11) : 1086 - 1096
  • [47] PROTEIN-PURIFICATION BY AFFINITY BINDING TO UNILAMELLAR VESICLES
    POWERS, JD
    KILPATRICK, PK
    CARBONELL, RG
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1988, 195 : 184 - IEC
  • [48] DUAL-FUNCTIONAL AFFINITY PROTEIN-PURIFICATION
    RUAAN, RC
    BLAIR, JB
    SHAEIWITZ, JA
    BIOTECHNOLOGY PROGRESS, 1988, 4 (02) : 107 - 112
  • [49] PURIFICATION OF HUMAN COMPLEMENT PROTEIN CLQ BY AFFINITY CHROMATOGRAPHY
    SLEDGE, CR
    BING, DH
    FEDERATION PROCEEDINGS, 1972, 31 (02) : A739 - &
  • [50] Boosting tandem affinity purification of plant protein complexes
    Van Leene, Jelle
    Witters, Erwin
    Inze, Dirk
    De Jaeger, Geert
    TRENDS IN PLANT SCIENCE, 2008, 13 (10) : 517 - 520